نتایج جستجو برای: petunia

تعداد نتایج: 1403  

Journal: :Trends in plant science 2005
Tom Gerats Michiel Vandenbussche

Research today aims to analyse the development of plant processes over evolutionary time. To obtain a representative view, a range of plant species covering at least the crucial nodes in phylogeny must be selected for an in depth analysis. Here we present Petunia as one of the available systems: as a representative of the Solanaceae it has the advantages of good culture conditions and the avail...

Journal: :Plant physiology 1995
K R Clark J J Okuley T L Sims

Journal: :Frontiers in Plant Science 2016

Journal: :Nucleic acids research 1991
P L Conklin M R Hanson

The rps19 ribosomal protein gene, which has not been previously reported in any mitochondrial genome, was identified by sequence analysis in the mitochondrial DNA of the higher plant Petunia hybrida. According to the sequence of eight rps19 cDNAs, seven C to U conversions with respect to the genomic sequence are present in rps19 transcripts. Not all transcripts are fully edited at these seven s...

Journal: :Plant physiology 1999
D G Clark E K Gubrium J E Barrett T A Nell H J Klee

Experiments with ethylene-insensitive tomato (Lycopersicon esculentum) and petunia (Petunia x hybrida) plants were conducted to determine if normal or adventitious root formation is affected by ethylene insensitivity. Ethylene-insensitive Never ripe (NR) tomato plants produced more below-ground root mass but fewer above-ground adventitious roots than wild-type Pearson plants. Applied auxin (ind...

Journal: :Plant physiology 2000
V N Guyon J D Astwood E C Garner A K Dunker L P Taylor

Petunia (Petunia hybrida) pollen requires flavonols (Fl) to germinate. Adding kaempferol to Fl-deficient pollen causes rapid and synchronous germination and tube outgrowth. We exploited this system to identify genes responsive to Fls and to examine the changes in gene expression that occur during the first 0.5 h of pollen germination. We used a subtracted library and differential screening to i...

Journal: :Plant physiology 2006
Silvia Ferrario Anna V Shchennikova John Franken Richard G H Immink Gerco C Angenent

The shoot apical meristem (SAM), a small group of undifferentiated dividing cells, is responsible for the continuous growth of plants. Several genes have been identified that control the development and maintenance of the SAM. Among these, WUSCHEL (WUS) from Arabidopsis (Arabidopsis thaliana) is thought to be required for maintenance of a stem cell pool in the SAM. The MADS-box gene AGAMOUS, in...

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